{"title":"How to Benchmark Supercomputers","authors":"Gang Xie, Yong Xiao","doi":"10.1109/DCABES.2015.98","DOIUrl":null,"url":null,"abstract":"Benchmarks are designed to mimic a particular type of workload on a component or system of supercomputer to compare platforms, identify performance bottlenecks, evaluate potential solutions, and help users in their decision of buying or using machines most appropriate for their application requirements. In this paper we discuss the purpose, significance and method of benchmarking supercomputers, describe the state of the art, and review five of the mainstream benchmarks for supercomputer evaluation, among them, Linpack is the most popular for the famous TOP500 ranking list. In addition to this, there is the HPCG benchmark the goals of which are to stress a balance of floating point operation speed and communication bandwidth and latency, there is the Rodinia benchmark for evaluating the heterogeneous supercomputers composed of both GPUs and multi-core CPUs, there is the SPEC benchmark which can be applied to the newest generation of high-performance computers, there is still the DEISA benchmark comprises a number of real applications taken from a wide range of disciplines, including astrophysics, fluid dynamics, climate modelling, biosciences, materials science, fusion power and fundamental particle physics.","PeriodicalId":444588,"journal":{"name":"2015 14th International Symposium on Distributed Computing and Applications for Business Engineering and Science (DCABES)","volume":"23 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2015-08-18","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"4","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2015 14th International Symposium on Distributed Computing and Applications for Business Engineering and Science (DCABES)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/DCABES.2015.98","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 4

Abstract

Benchmarks are designed to mimic a particular type of workload on a component or system of supercomputer to compare platforms, identify performance bottlenecks, evaluate potential solutions, and help users in their decision of buying or using machines most appropriate for their application requirements. In this paper we discuss the purpose, significance and method of benchmarking supercomputers, describe the state of the art, and review five of the mainstream benchmarks for supercomputer evaluation, among them, Linpack is the most popular for the famous TOP500 ranking list. In addition to this, there is the HPCG benchmark the goals of which are to stress a balance of floating point operation speed and communication bandwidth and latency, there is the Rodinia benchmark for evaluating the heterogeneous supercomputers composed of both GPUs and multi-core CPUs, there is the SPEC benchmark which can be applied to the newest generation of high-performance computers, there is still the DEISA benchmark comprises a number of real applications taken from a wide range of disciplines, including astrophysics, fluid dynamics, climate modelling, biosciences, materials science, fusion power and fundamental particle physics.
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如何测试超级计算机
基准测试旨在模拟超级计算机组件或系统上的特定类型的工作负载,以比较平台、识别性能瓶颈、评估潜在的解决方案,并帮助用户决定购买或使用最适合其应用程序需求的机器。本文讨论了超级计算机基准测试的目的、意义和方法,描述了目前的发展状况,并回顾了超级计算机评估的五种主流基准测试,其中Linpack在著名的TOP500排行榜上最受欢迎。除此之外,还有HPCG基准,其目标是强调浮点运算速度与通信带宽和延迟的平衡,还有Rodinia基准,用于评估由gpu和多核cpu组成的异构超级计算机,还有SPEC基准,可以应用于最新一代的高性能计算机。尽管如此,DEISA基准仍然包括许多来自广泛学科的实际应用,包括天体物理学、流体动力学、气候建模、生物科学、材料科学、聚变能和基本粒子物理学。
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